218 lines
6.5 KiB
OCaml
218 lines
6.5 KiB
OCaml
(* Description of the Mips processor *)
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open Misc
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open Cmm
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open Reg
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open Arch
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open Mach
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(* Exceptions raised to signal cases not handled here *)
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exception Use_default
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(* Instruction selection *)
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let select_addressing = function
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Cconst_symbol s ->
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(Ibased(s, 0), Ctuple [])
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| Cop(Cadda, [Cconst_symbol s; Cconst_int n]) ->
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(Ibased(s, n), Ctuple [])
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| Cop(Cadda, [arg; Cconst_int n]) ->
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(Iindexed n, arg)
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| Cop(Cadda, [arg1; Cop(Caddi, [arg2; Cconst_int n])]) ->
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(Iindexed n, Cop(Cadda, [arg1; arg2]))
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| arg ->
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(Iindexed 0, arg)
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let select_oper op args = raise Use_default
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let select_store addr exp = raise Use_default
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let pseudoregs_for_operation op arg res = raise Use_default
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let is_immediate (n:int) = true
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(* Registers available for register allocation *)
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(* Register map:
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$0 always 0
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$1 temporary for the assembler
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$2 - $7 0 - 5 function results
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$8 - $15 6 - 13 function arguments
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$16 - $21 14 - 19 general purpose (preserved by C)
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$22 allocation pointer (preserved by C)
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$23 allocation limit (preserved by C)
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$24 - $25 temporaries
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$26 - $29 kernel regs, stack pointer, global pointer
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$30 trap pointer (preserved by C)
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$31 return address
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$f0 - $f8 100 - 104 function results
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$f10 temporary
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$f12 - $f18 105 - 108 function arguments
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$f20 - $f30 109 - 114 general purpose (preserved by C) *)
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let int_reg_name = [|
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(* 0-5 *) "$2"; "$3"; "$4"; "$5"; "$6"; "$7";
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(* 6-13 *) "$8"; "$9"; "$10"; "$11"; "$12"; "$13"; "$14"; "$15";
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(* 14-19 *) "$16"; "$17"; "$18"; "$19"; "$20"; "$21"
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|]
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let float_reg_name = [|
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(* 100-104 *) "$f0"; "$f2"; "$f4"; "$f6"; "$f8";
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(* 105-108 *) "$f12"; "$f14"; "$f16"; "$f18";
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(* 109-114 *) "$f20"; "$f22"; "$f24"; "$f26"; "$f28"; "$f30"
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|]
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let num_register_classes = 2
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let register_class r =
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match r.typ with
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Int -> 0
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| Addr -> 0
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| Float -> 1
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let num_available_registers = [| 20; 15 |]
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let first_available_register = [| 0; 100 |]
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let register_name r =
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if r < 100 then int_reg_name.(r) else float_reg_name.(r - 100)
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(* Representation of hard registers by pseudo-registers *)
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let hard_int_reg =
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let v = Array.new 20 Reg.dummy in
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for i = 0 to 19 do v.(i) <- Reg.at_location Int (Reg i) done;
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v
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let hard_float_reg =
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let v = Array.new 15 Reg.dummy in
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for i = 0 to 14 do v.(i) <- Reg.at_location Float (Reg(100 + i)) done;
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v
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let all_phys_regs =
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Array.append hard_int_reg hard_float_reg
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let phys_reg n =
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if n < 100 then hard_int_reg.(n) else hard_float_reg.(n - 100)
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let stack_slot slot ty =
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Reg.at_location ty (Stack slot)
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(* Calling conventions *)
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let calling_conventions first_int last_int first_float last_float
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initial_stack_ofs make_stack arg =
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let loc = Array.new (Array.length arg) Reg.dummy in
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let int = ref first_int in
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let float = ref first_float in
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let ofs = ref initial_stack_ofs in
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for i = 0 to Array.length arg - 1 do
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match arg.(i).typ with
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Int | Addr as ty ->
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if !int <= last_int then begin
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loc.(i) <- phys_reg !int;
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incr int
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end else begin
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loc.(i) <- stack_slot (make_stack !ofs) ty;
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ofs := !ofs + size_int
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end
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| Float ->
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if !float <= last_float then begin
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loc.(i) <- phys_reg !float;
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incr float
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end else begin
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loc.(i) <- stack_slot (make_stack !ofs) Float;
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ofs := !ofs + size_float
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end
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done;
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(loc, Misc.align !ofs 8) (* Keep stack 8-aligned *)
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let incoming ofs = Incoming ofs
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let outgoing ofs = Outgoing ofs
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let not_supported ofs = fatal_error "Proc.loc_results: cannot call"
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let loc_arguments arg =
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calling_conventions 6 13 105 108 0 outgoing arg
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let loc_parameters arg =
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let (loc, ofs) = calling_conventions 6 13 105 108 0 incoming arg in loc
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let loc_results res =
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let (loc, ofs) = calling_conventions 0 5 100 104 0 not_supported res in loc
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(* The C compiler calling conventions are peculiar, especially when
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a mix of ints and floats are passed. Here, we trap a few special
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cases and revert to [calling_conventions] when only scalars are
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passed. *)
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let loc_external_arguments arg =
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try
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for i = 0 to Array.length arg - 1 do
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if arg.(i).typ = Float then raise Exit
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done;
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(* Always reserve 4 words at the bottom of the stack *)
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calling_conventions 2 5 0 0 16 outgoing arg
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with Exit ->
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match Array.to_list(Array.map register_class arg) with
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[1] -> (* $f12 *)
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[| phys_reg 105 |], 16
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| [1;1] -> (* $f12, $f14 *)
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[| phys_reg 105; phys_reg 106 |], 16
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| [1;0] -> (* $f12, $6 *)
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[| phys_reg 105; phys_reg 4 |], 16
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| [0;1] -> (* $4, $6 (needs fpreg -> $6,$7 move) *)
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[| phys_reg 2; phys_reg 4 |], 16
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| [0;0;1] -> (* $4, $5, $6 (ditto) *)
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[| phys_reg 2; phys_reg 3; phys_reg 4 |], 16
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| _ ->
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fatal_error "Proc_mips.loc_external_arguments"
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let loc_external_results res =
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let (loc, ofs) = calling_conventions 0 0 100 100 0 not_supported res in loc
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let loc_exn_bucket = phys_reg 0 (* $2 *)
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(* Registers destroyed by operations *)
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let destroyed_at_c_call = (* $16 - $21, $f20 - $f30 preserved *)
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Array.of_list(List.map phys_reg
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[0;1;2;3;4;5;6;7;8;9;10;11;12;13;
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100;101;102;103;104;105;106;107;108])
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let destroyed_at_oper = function
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Iop(Icall_ind | Icall_imm _ | Iextcall(_, true)) -> all_phys_regs
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| Iop(Iextcall(_, false)) -> destroyed_at_c_call
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| _ -> [||]
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let destroyed_at_raise = all_phys_regs
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(* Maximal register pressure *)
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let safe_register_pressure = function
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Iextcall(_, _) -> 6
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| _ -> 20
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let max_register_pressure = function
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Iextcall(_, _) -> [| 6; 6 |]
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| _ -> [| 20; 15 |]
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(* Reloading *)
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let reload_test makereg tst args = raise Use_default
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let reload_operation makereg op args res = raise Use_default
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(* Layout of the stack *)
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let num_stack_slots = [| 0; 0 |]
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let contains_calls = ref false
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(* Calling the assembler *)
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let assemble_file infile outfile =
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Sys.command ("as -O2 -o " ^ outfile ^ " " ^ infile)
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(* Calling the archiver *)
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let create_archive archive file_list =
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Misc.remove_file archive;
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Sys.command ("ar rcs " ^ archive ^ " " ^ String.concat " " file_list)
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